Recently, OPPO launched the tenth-generation milestone of its Reno series—the OPPO Reno10 series. This lineup demonstrates considerable attention to detail across aspects such as design, color options, portrait photography, and battery life. The latter, in particular, achieves a new breakthrough in performance while maintaining a sleek and lightweight design.

The newly launched OPPO Reno10 series includes three models: Reno10, Reno10 Pro, and Reno10 Pro+. The body design has been upgraded from "Golden Silk Glazed Glass" to "Golden Silk Gauze" craftsmanship, offering an improved tactile experience. Available in four colors—Brilliant Gold, Twilight Purple, Moon Sea Black, and Overflow Blue—it caters to diverse aesthetic preferences. The series is powered by the Snapdragon 778G, Dimensity 8200, and Snapdragon 8+ flagship chipsets respectively, paired with LPDDR5 RAM and UFS 3.1 flash storage. With large 4600mAh/4700mAh batteries and the newly upgraded ColorOS Supercomputing Platform, the smooth user experience is further enhanced.
Imaging capabilities remain a highlight of the Reno series. The Reno10 series comes standard with a periscope telephoto lens across all models. Through miniaturization of the module, an ultra-slim periscope setup is achieved, saving 12% of lens module space. Combined with a dual-curved symmetric design that further narrows the screen bezels, the Reno10 series appears visually lighter.

A slim and lightweight profile is the most distinctive design language of the OPPO Reno series. The OPPO Reno10 series achieves a comfortable, thin, and light feel by optimizing the overall body design and implementing efficient internal space stacking, accommodating both a telephoto lens and a large battery.
Notably, the entire series incorporates Innoscience's new low-voltage Gallium Nitride (VGaN) technology, replacing the traditional pair of back-to-back SiMOS inside the phone. This enables lower conduction loss during battery charging and discharging while saving internal space, contributing significantly to the slim design of the Reno10 series.
It is understood that the VGaN chip used inside the Reno10 series is Innoscience's 40V low-voltage chip INN040W048A. This chip supports bidirectional conduction and features ultra-high switching speed, extremely low on-resistance, and no reverse recovery. It not only allows for efficient utilization of internal phone space but also reduces temperature rise during charging, maintaining a comfortable body temperature during fast charging and extending battery lifespan.

Specifically, the OPPO Reno10 series employs "VGaN technology + efficient space stacking," freeing up valuable internal space to house large equivalent 4600mAh/4700mAh batteries within an exceptionally slim and light body.
Simultaneously, thanks to the direct driving of the internal VGaN by OPPO's self-developed SUPERVOOC S power management chip, 45% of the fast-charging component area is saved. This supports 80W/100W SUPERVOOC flash charging, significantly enhancing battery life and fast-charging speed. It enables a seamless experience: 5 minutes of charging for 3 hours of streaming, or a full charge in just 27 minutes.

Currently, Innoscience's VGaN has been adopted in multiple smartphone models, including OPPO Reno7, Realme GT2, OnePlus Ace2, and Motorola Edge40, achieving remarkable results: a 60–70% reduction in volume and at least an 85% decrease in peak power heat generation.
As a globally leading smartphone brand, OPPO consistently adheres to the philosophy of "Technology Innovation, Creating a Better Life," daring to explore and maintaining a leading edge in fast-charging technology. To provide users with a superior charging experience, OPPO and Innoscience aligned perfectly, successfully introducing GaN chips inside smartphones and sparking an industry trend. It is reported that VGaN is the industry's only GaN chip capable of being integrated into the phone motherboard and achieving mass production in end-user devices. OPPO is also the world's first manufacturer to introduce GaN inside a phone. It is believed that with technological iteration and upgrades, GaN chips will find applications in an increasing number of electronic products, delivering exceptional experiences to end-users.
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